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首页> 外文期刊>Journal of Pressure Vessel Technology >A Parametric Finite Element Geometric Analysis of a Pressurized Sphere with Cylindrical Flush Nozzle Outlet
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A Parametric Finite Element Geometric Analysis of a Pressurized Sphere with Cylindrical Flush Nozzle Outlet

机译:具有圆柱齐平喷嘴出口的加压球体的参数化有限元几何分析

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摘要

A spherical, internally pressurized vessel with cylindrical flush nozzle outlet is analyzed in a parametric, linear displacement based finite element scheme. Geometric effects of outer convex radius design on the whole vessel body are investigated. An inside sharp corner where spherical section is joined with the flush nozzle outlet contributes to stress as well as degree of curvature in the outer convex radius. Stress and deformation states exhibit material, geometry, and internal pressure level dependencies. An important feature of the method, mesh convergence, is also validated for reliability of the results. Severe stress distributions and strain accumulations can be reduced through controlling outer geometric parameters. Materials having diverse mechanical properties such as carbon steel, Ti-Al-V alloy, near-eutectic Sn63-Pb37 solder alloy, and Nylon 66 are used for the vessel structure to reveal material dependence. Lower order elements are recommended for computational analysis.
机译:使用基于参数线性位移的有限元方案分析带有圆柱形冲洗喷嘴出口的球形内部加压容器。研究了外凸半径设计对整个船体的几何影响。球形截面与冲洗喷嘴出口相连的内部尖角会影响应力以及外凸半径的曲率。应力和变形状态表现出材料,几何形状和内部压力水平的依赖性。该方法的一个重要特征,即网格收敛,也已验证了结果的可靠性。通过控制外部几何参数,可以减少严重的应力分布和应变累积。具有不同机械性能的材料(例如碳钢,Ti-Al-V合金,近共晶Sn63-Pb37焊料合金和尼龙66)用于容器结构以显示材料依赖性。建议使用低阶元素进行计算分析。

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